首页> 美国卫生研究院文献>Frontiers in Bioengineering and Biotechnology >Heterotrophic Cultivation of Cyanobacteria: Study of Effect of Exogenous Sources of Organic Carbon Absolute Amount of Nutrients and Stirring Speed on Biomass and Lipid Productivity
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Heterotrophic Cultivation of Cyanobacteria: Study of Effect of Exogenous Sources of Organic Carbon Absolute Amount of Nutrients and Stirring Speed on Biomass and Lipid Productivity

机译:蓝藻的异养培养:有机碳营养绝对量和搅拌速度对生物质和脂质生产力的影响研究

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摘要

The production of bioproducts from cyanobacteria with techno-economic feasibility is a challenge to these biotechnological processes. The choice of low-cost raw materials is of great importance for the overall economy of bioprocesses, as they represent a significant percentage in the final cost of the product. The objective of this work was to study the operational parameters of cultivation (exogenous sources of organic carbon and absolute amount of nutrients) to optimize productivity in bioproducts by Aphanothece microscopica Nägeli, for further evaluation of stirring speed. The experiments were performed in a bubble column bioreactor, operating at 30°C, pH of 7.6, C/N ratio of 20, 100 mg/L of inoculum, continuous aeration of 1 volume of air per volume of culture per minute (VVM), and absence of light. The results indicate that absolute amounts of 5,000/250 using cassava starch resulted in improved system performance, reaching biomass productivity of 36.66 mg/L/h in parallel with lipid productivity of 6.65 mg/L/h. Finally, experiments with variation in stirring speed indicate that 200 rpm resulted in better average rate of substrate consumption (44.01 mg/L/h), in parallel to biomass productivity of 39.27 mg/L/h. However, the increase of stirring speed had a negative effect on lipid productivity of the process. The technological route developed indicates potential to production of biomass and bulk oil, as a result of the capacity of cyanobacteria to adapt their metabolism in varying culture conditions, which provides opportunities to modify, control, and thereby maximize the formation of targeted compounds.
机译:具有技术经济可行性的蓝细菌生产生物产品是对这些生物技术过程的挑战。低成本原材料的选择对于整个生物过程的经济性至关重要,因为它们占产品最终成本的很大一部分。这项工作的目的是研究栽培的操作参数(有机碳的外源和绝对养分的量),以优化Aphanothece microscopicaNägeli在生物产品中的生产率,以进一步评估搅拌速度。实验是在鼓泡塔生物反应器中进行的,该反应器在30°C,pH 7.6,C / N比为20,接种物100 mg / L,每体积培养物每分钟(VVM)连续充气1空气的条件下进行,并且没有光照。结果表明,使用木薯淀粉的绝对量为5,000 / 250可以改善系统性能,达到36.66 mg / L / h的生物量生产率和6.65 mg / L / h的脂质生产率。最后,搅拌速度变化的实验表明,200 rpm导致平均底物消耗率更高(44.01 mg / L / h),而生物质生产率为39.27 mg / L / h。然而,搅拌速度的增加对该方法的脂质生产率具有负面影响。由于蓝细菌有能力在不同的培养条件下适应其新陈代谢,因此开发出的技术路线表明了生产生物质和散装油的潜力,这为修饰,控制并最大程度地形成目标化合物提供了机会。

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